\begin{document}$ - {3^ \circ } $\end{document} to \begin{document}$ + {3^ \circ } $\end{document}, the designed CPPLN crystal exhibits a maximum SHG efficiency of 0.80% and a minimum one of 0.51%, which indicates that the SHG efficiency of this crystal in this range can be maintained at 60% of the maximum efficiency. The experimental results show that the SHG efficiency can be more than 11 times that of LBO crystal. Moreover, the study indicates that the half width of the actual SHG efficiency near the incident angle of the designed CPPLN crystal can exceed \begin{document}$ {6^ \circ } $\end{document}, demonstrating its excellent tolerance for changes in incident angle. Furthermore, the output spot of the SHG light generated by the designed CPPLN crystal exhibits a standard Gaussian profile, which remains virtually unaffected by the incident angle. In summary, the findings of this research highlight the CPPLN crystal as a promising alternative to LBO, with markedly higher SHG efficiency and better angular robustness. These superior characteristics make the CPPLN crystal a highly attractive candidate for a wide range of laser applications."> - 必威体育下载

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Liu Li-Qiang, Su Wei-Lun, Liu Jun-Ming, Zou Yu, Hong Li-Hong, Li Zhi-Yuan
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  • Abstract views:134
  • PDF Downloads:8
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  • Received Date:31 May 2024
  • Accepted Date:12 July 2024
  • Available Online:07 August 2024

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